Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario

The main factor in television broadcast system planning is the accurate estimation of the received signal strength with deep understanding of the characterization of the channel. The planning based on actual scenario through field measurements is required for more reliable characterization. This pap...

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Main Author: Dela Cruz, Dennis R.
Format: text
Language:English
Published: Animo Repository 2016
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Online Access:https://animorepository.dlsu.edu.ph/etd_masteral/5392
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etd_masteral-122302024-08-07T08:12:35Z Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario Dela Cruz, Dennis R. The main factor in television broadcast system planning is the accurate estimation of the received signal strength with deep understanding of the characterization of the channel. The planning based on actual scenario through field measurements is required for more reliable characterization. This paper presents path loss models based on characterization conducted for antenna heights of 10m and 2m both for fixed reception of analog and digital TV signals around Metro Manila. Actual field measurements were done to 42 locations. 7 TV channels were considered in the study including 3 digital channels (32, 42 and 43) and 4 analog channels (31, 33, 37 and 41). Field strength as well as bit error rate (BER) for digital channels were captured to help for the characterization of the given channels. Curve fitting, using fminsearch algorithm, and multiple regression were used to derive the statistical model and come up with the model, Path Lloss= - 963 + 40.1 log distance (km) + 377 log Frequency (MHz) - 0.988 Antenna height (m). Compared to other outdoor models such as COST-321, ECC-33 and Free Space Path Loss, the derived statistical model has better prediction performance arriving with smallest value of root mean square error equal to 14.98 and 10.87 mean absolute percentage error. Also, protection ratio has been determined between adjacent digital TV channels in order to prevent possible adjacent channel interference. Curve fitting of BER vs. Protection ratio was used to come up with the Protection Ration equal to -10.26 dB. The result of this research can be used by TV broadcasters as well as the government regulating agency (NTC) in planning transmitter location during transition to Digital Television. 2016-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_masteral/5392 Master's Theses English Animo Repository Digital television--Philippines Television broadcasting--Philippines
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Digital television--Philippines
Television broadcasting--Philippines
spellingShingle Digital television--Philippines
Television broadcasting--Philippines
Dela Cruz, Dennis R.
Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario
description The main factor in television broadcast system planning is the accurate estimation of the received signal strength with deep understanding of the characterization of the channel. The planning based on actual scenario through field measurements is required for more reliable characterization. This paper presents path loss models based on characterization conducted for antenna heights of 10m and 2m both for fixed reception of analog and digital TV signals around Metro Manila. Actual field measurements were done to 42 locations. 7 TV channels were considered in the study including 3 digital channels (32, 42 and 43) and 4 analog channels (31, 33, 37 and 41). Field strength as well as bit error rate (BER) for digital channels were captured to help for the characterization of the given channels. Curve fitting, using fminsearch algorithm, and multiple regression were used to derive the statistical model and come up with the model, Path Lloss= - 963 + 40.1 log distance (km) + 377 log Frequency (MHz) - 0.988 Antenna height (m). Compared to other outdoor models such as COST-321, ECC-33 and Free Space Path Loss, the derived statistical model has better prediction performance arriving with smallest value of root mean square error equal to 14.98 and 10.87 mean absolute percentage error. Also, protection ratio has been determined between adjacent digital TV channels in order to prevent possible adjacent channel interference. Curve fitting of BER vs. Protection ratio was used to come up with the Protection Ration equal to -10.26 dB. The result of this research can be used by TV broadcasters as well as the government regulating agency (NTC) in planning transmitter location during transition to Digital Television.
format text
author Dela Cruz, Dennis R.
author_facet Dela Cruz, Dennis R.
author_sort Dela Cruz, Dennis R.
title Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario
title_short Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario
title_full Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario
title_fullStr Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario
title_full_unstemmed Philippine digital television (DTV) transition: Technical challenges based on actual digital and analog terrestrial television transmission scenario
title_sort philippine digital television (dtv) transition: technical challenges based on actual digital and analog terrestrial television transmission scenario
publisher Animo Repository
publishDate 2016
url https://animorepository.dlsu.edu.ph/etd_masteral/5392
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